The spectral energy distribution of quiescent black hole X-ray binaries: new constraints from Spitzer
arXiv:0707.0028 · doi:10.1086/521524
Abstract
(Abridged) Among the various issues that remain open in the field of accretion onto black hole X-ray binaries (BHBs) is the way the gas accretes at very low Eddington ratios, in the so-called quiescent regime. While there is general agreement that the X-rays are produced by a population of high-energy electrons near to the BH, the controversy comes about in modeling the contribution from inflowing vs. outflowing particles, and their relative energy budget. Recent Spitzer observations of three quiescent BHBs have shown evidence for excess emission with respect to the tail of the companion star between 8-24 micron. We suggest that synchrotron emission from a partially self-absorbed outflow might be responsible for the observed mid-IR excess, in place of, or in addition to, thermal emission from circumbinary material. If so, then the jet synchrotron luminosity exceeds the measured 2-10 keV luminosity by a factor of a few in these systems. In turn, the mechanical power stored in the jet exceeds the bolometric X-ray luminosity at least by 4 orders of magnitude. We then compile the broadband spectral energy distribution (SED) of A0620-00, the lowest Eddington-ratio stellar mass BH with a known radio counterpart, by means of simultaneous radio, optical and X-ray observations, and the archival Spitzer data. We are able to fit the SED of A0620-00 with a `maximally jet-dominated' model in which the radio through the soft X-rays are dominated by synchrotron emission, while the hard X-rays are dominated by inverse Compton at the jet base. The fitted parameters land in a range of values that is reminiscent of the Galactic Center super-massive BH Sgr A*. Most notably, the inferred ratio of the jet acceleration rate to local cooling rates is two orders of magnitude weaker with respect to higher luminosity, hard state sources.
accepted by ApJ
References in corpus (12)
- A Debris Disk Around An Isolated Young Neutron Star
- A Long, Hard Look at the Low-Hard State in Accreting Black Holes
- Global optical/infrared - X-ray correlations in X-ray binaries: quantifying disc and jet contributions
- A radio-emitting outflow in the quiescent state of A0620-00: implications for modelling low-luminosity black hole binaries
- Jet-dominated advective systems: radio and X-ray luminosity dependence on the accretion rate
- A Prominent Accretion Disk in the Low-Hard State of the Black Hole Candidate SWIFT J1753.5-0127
- The jet-powered optical nebula of Cygnus X-1
- Spitzer Reveals Infrared Optically-Thin Synchrotron Emission from the Compact Jet of the Neutron Star X-Ray Binary 4U 0614+091
- Further Evidence for Variable Synchrotron Emission in XTE J1118+480 in Outburst
- On the Radio/X-ray Correlation in Microquasars
- Near-Infrared Spectra of the Black Hole X-Ray Binary, A0620-00
- Jets from the faintest black holes
Cited by in corpus (36)
- Relativistic Jets in Active Galactic Nuclei und Microquasars
- The radio/X-ray domain of black hole X-ray binaries at the lowest radio luminosities
- Hot accretion flow in black hole binaries: a link connecting X-rays to the infrared
- Revisiting the radio/X-ray flux correlation in the black hole V404 Cyg: from outburst to quiescence
- Results from an extensive simultaneous broadband campaign on the underluminous active nucleus M81*: further evidence for mass-scaling accretion in black holes
- The ultracompact nature of the black hole candidate X-ray binary 47 Tuc X9
- An overview of jets and outflows in stellar mass black holes
- A Model for Emission from Jets in X-ray Binaries: Consequences of a Single Acceleration Episode
- The 2015 Decay of the Black Hole X-ray Binary V404 Cygni: Robust Disk-Jet Coupling and a Sharp Transition into Quiescence
- Constraints on Relativistic Jets in Quiescent Black Hole X-ray Binaries from Broadband Spectral Modeling
- Polarised infrared emission from X-ray binary jets
- Swift J1357.2-0933: the faintest black hole?
- Zooming in on a sleeping giant: milliarcsecond HSA imaging of the black hole binary V404 Cyg in quiescence
- Extremely fast orbital decay of the black hole X-ray binary Nova Muscae 1991
- Multiwavelength observations of the black hole X-ray binary A0620-00 in quiescence
- Colours of black holes: infrared flares from the hot accretion disc in XTE J1550-564
- Up and Down the Black Hole Radio/X-ray Correlation: the 2017 mini-outbursts from Swift J1753.5-0127
- On the Origin of the 511 keV Emission in the Galactic Centre
- Radio & X-ray detections of GX 339--4 in quiescence using MeerKAT and Swift
- Sub-mm Jet Properties of the X-Ray Binary Swift J174526
- Formation of Black Hole Low-Mass X-ray Binaries
- Jet-dominated quiescent states in black hole X-ray binaries: the case of V404 Cyg
- The MAVERIC survey: A hidden pulsar and a black hole candidate in ATCA radio imaging of the globular cluster NGC 6397
- Optical Precursors to Black Hole X-ray Binary Outbursts: An evolving synchrotron jet spectrum in Swift J1357.2-0933
- Polarized synchrotron emission in quiescent black hole X-ray transients
- A Compact Jet at the Infrared Heart of the Prototypical Low-Luminosity AGN in NGC 1052
- Chandra detection of XTE J1650-500 in quiescence and the minimum luminosity of black hole X-ray binaries
- Colors and patterns of black hole X-ray binary GX 339-4
- Paving the way to simultaneous multi-wavelength astronomy
- ALMA observations of A0620-00: fresh clues on the nature of quiescent black hole X-ray binary jets
- IR Contamination in Galactic X-Ray Novae
- Optical and infrared polarimetry of the transient LMXB Cen X-4 in quiescence
- The flickering radio jet from the quiescent black hole X-ray binary A0620-00
- Quiescent black hole X-ray binaries as multi-messenger sources
- An Observational Signature of Sub-Equipartition Magnetic Fields in the Spectra of Black Hole Binaries
- X-ray Spectra From Weakly Magnetized Accretion Flows